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Image Sensor System With Bio-Inspired Efficient Coding and Adaptation

机译:具有生物启发的高效编码和自适应的图像传感器系统

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摘要

We designed and implemented an image sensor system equipped with three bio-inspired coding and adaptation strategies: logarithmic transform, local average subtraction, and feedback gain control. The system comprises a field-programmable gate array (FPGA), a resistive network, and active pixel sensors (APS), whose light intensity-voltage characteristics are controllable. The system employs multiple time-varying reset voltage signals for APS in order to realize multiple logarithmic intensity-voltage characteristics, which are controlled so that the entropy of the output image is maximized. The system also employs local average subtraction and gain control in order to obtain images with an appropriate contrast. The local average is calculated by the resistive network instantaneously. The designed system was successfully used to obtain appropriate images of objects that were subjected to large changes in illumination.
机译:我们设计并实现了一种图像传感器系统,该系统配备了三种受生物启发的编码和自适应策略:对数变换,局部平均减法和反馈增益控制。该系统包括现场可编程门阵列(FPGA),电阻网络和有源像素传感器(APS),它们的光强度-电压特性是可控制的。该系统对APS使用多个随时间变化的复位电压信号,以实现多个对数强度-电压特性,对其进行控制,以使输出图像的熵最大化。该系统还采用局部平均减法和增益控制,以获得具有适当对比度的图像。局部平均值由电阻网络即时计算。设计的系统已成功用于获取光照变化较大的物体的适当图像。

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